Two-photon (2P) excitation is a cornerstone approach widely employed in neuroscience microscopy for deep optical access and sub-micrometric-resolution light targeting into the brain. However, besides structural and functional imaging, 2P optogenetic stimulations are less routinary, especially in 3D. This is because of the adopted scanning systems, often feebly effective, slow and mechanically constricted. Faster illumination can be achieved through acousto-optic deflectors (AODs) although their applicability to large volumes excitation has been limited by large efficiency drop along the optical axis. Here, we present a new AOD-based scheme for 2P 3D scanning that improves the power delivery between different illumination planes. We applied this approach to photostimulate an optogenetic actuator in zebrafish larvae, demonstrating the method efficiency observing increased activity responses and uniform activation probabilities from neuronal clusters addressed in the volume. This novel driving scheme can open to new AOD applications in neuroscience, allowing more effective 3D interrogation in large neuronal networks.

Ricci P., Marchetti M., Sorelli M., Turrini L., Resta F., Gavryusev V., et al. (2022). Power-effective scanning with AODs for 3D optogenic applications. JOURNAL OF BIOPHOTONICS, e202100256 [10.1002/jbio.202100256].

Power-effective scanning with AODs for 3D optogenic applications

Ricci P.
;
Sancataldo G.;Silvestri L.;Pavone F. S.
2022-01-09

Abstract

Two-photon (2P) excitation is a cornerstone approach widely employed in neuroscience microscopy for deep optical access and sub-micrometric-resolution light targeting into the brain. However, besides structural and functional imaging, 2P optogenetic stimulations are less routinary, especially in 3D. This is because of the adopted scanning systems, often feebly effective, slow and mechanically constricted. Faster illumination can be achieved through acousto-optic deflectors (AODs) although their applicability to large volumes excitation has been limited by large efficiency drop along the optical axis. Here, we present a new AOD-based scheme for 2P 3D scanning that improves the power delivery between different illumination planes. We applied this approach to photostimulate an optogenetic actuator in zebrafish larvae, demonstrating the method efficiency observing increased activity responses and uniform activation probabilities from neuronal clusters addressed in the volume. This novel driving scheme can open to new AOD applications in neuroscience, allowing more effective 3D interrogation in large neuronal networks.
9-gen-2022
Settore FIS/07 - Fisica Applicata(Beni Culturali, Ambientali, Biol.e Medicin)
Settore FIS/03 - Fisica Della Materia
Ricci P., Marchetti M., Sorelli M., Turrini L., Resta F., Gavryusev V., et al. (2022). Power-effective scanning with AODs for 3D optogenic applications. JOURNAL OF BIOPHOTONICS, e202100256 [10.1002/jbio.202100256].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/534902
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